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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >Extraction, Identification, and Functional Characterization of a Bioactive Substance From Automated Compound-Handling Plastic Tips
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Extraction, Identification, and Functional Characterization of a Bioactive Substance From Automated Compound-Handling Plastic Tips

机译:从自动化合物处理塑料吸头中提取,鉴定和功能鉴定生物活性物质

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摘要

Disposable plastic labware is ubiquitous in contemporary pharmaceutical research laboratories. Plastic labware is routinely used for chemical compound storage and during automated liquid-handling processes that support assay development, high-throughput screening, structure-activity determinations, and liability profiling. However, there is little information available in the literature on the contaminants released from plastic labware upon DMSO exposure and their resultant effects on specific biological assays. The authors report here the extraction, by simple DMSO washing, of a biologically active substance from one particular size of disposable plastic tips used in automated compound handling. The active contaminant was identified as eruc_amide ((Z)-docos-13-enamide), a long-chain mono-unsaturated fatty acid amide commonly used in plastics manufacturing, by gas chromatography/mass spectroscopy analysis of the DMSO-extracted material. Tip extracts prepared in DMSO, as well as a commercially obtained sample of erucamide, were active in a functional bioassay of a known G-protein-coupled fatty acid receptor. A sample of a different disposable tip product from the same vendor did not release detectable erucamide following solvent extraction, and DMSO extracts prepared from this product were inactive in the receptor functional assay. These results demonstrate that solvent-extractable contaminants from some plastic labware used in the contemporary pharmaceutical research and development (R&D) environment can be introduced into physical and biological assays during routine compound manage_ment liquid-handling processes. These contaminants may further possess biological activity and are therefore a potential source of assay-specific confounding artifacts.
机译:一次性塑料实验室器具在当代制药研究实验室中无处不在。塑料实验室器皿通常用于化合物的存储以及在自动化液体处理过程中,以支持分析开发,高通量筛选,结构活性测定和责任分析。但是,在文献中几乎没有关于暴露于DMSO时从塑料实验室器具中释放出的污染物及其对特定生物学测定的影响的信息。作者在此报告通过简单的DMSO洗涤从一种特定尺寸的用于自动化合物处理的一次性塑料吸头中提取生物活性物质。通过DMSO萃取材料的气相色谱/质谱分析,将活性污染物鉴定为eruc_amide((Z)-docos-13-enamide),这是一种常用于塑料制造的长链单不饱和脂肪酸酰胺。在DMSO中制备的针尖提取物以及市售的芥酸酰胺样品在已知的G蛋白偶联脂肪酸受体的功能生物测定中具有活性。来自同一供应商的另一种一次性尖端产品的样品在溶剂萃取后未释放出可检测的芥酸酰胺,由该产品制备的DMSO萃取物在受体功能测定中无活性。这些结果表明,在常规化合物管理液体处理过程中,可以将用于现代药物研究与开发(R&D)环境的某些塑料实验室器具中可萃取出溶剂的污染物引入物理和生物测定中。这些污染物可能进一步具有生物活性,因此可能成为特定于分析的混杂物的潜在来源。

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